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生物纳米技术中碳纳米材料与淀粉样纤维之间的相互作用。

The interplay between carbon nanomaterials and amyloid fibrils in bio-nanotechnology.

机构信息

ETH Zurich, Food & Soft Materials, Department of Health Science & Technology, Zurich, Switzerland.

出版信息

Nanoscale. 2013 Jul 21;5(14):6207-18. doi: 10.1039/c3nr01644g. Epub 2013 Jun 6.

Abstract

Recent advances in bio-nanotechnology have not only rapidly broadened the applications and scope of hybrid nanomaterials in biological fields, but also greatly enriched the examples of ordered materials based on supramolecular self-assembly. Among eminent examples of functional nanostructured materials of undisputed impact in nanotechnology and biological environments, carbon nanomaterials (such as fullerenes, carbon nanotubes and graphene) and amyloid fibrils have attracted great attention because of their unique architectures and exceptional physical properties. Nonetheless, combination of these two classes of nanomaterials into functional hybrids is far from trivial. For example, the presence of carbon nanomaterials can offer either an inhibitory effect or promotion of amyloid fibrillation, depending on the structural architectures of carbon nanomaterials and the starting amyloid proteins/peptides considered. To date, numerous studies have been devoted to evaluating both the biological toxicity of carbon nanomaterials and their use in developing therapies for amyloidosis. At the same time, hybridization of these two classes of nanomaterials offers new possibilities for combining some of their desirable properties into nanocomposites of possible use in electronics, actuators, sensing, biomedicine and structural materials. This review describes recent developments in the hybridization of carbon nanomaterials and amyloid fibrils and discusses the current state of the art on the application of carbon nanomaterial-amyloid fibril hybrids in bio-nanotechnology.

摘要

近年来,生物纳米技术的进步不仅迅速拓宽了杂化纳米材料在生物领域的应用和范围,而且极大地丰富了基于超分子自组装的有序材料的实例。在纳米技术和生物环境中具有无可争议影响的功能纳米结构材料中,碳纳米材料(如富勒烯、碳纳米管和石墨烯)和淀粉样纤维因其独特的结构和优异的物理性能而受到极大关注。然而,将这两类纳米材料组合成功能杂化物远非易事。例如,碳纳米材料的存在可以提供抑制作用或促进淀粉样纤维形成,这取决于碳纳米材料的结构架构和所考虑的起始淀粉样蛋白/肽。迄今为止,已有大量研究致力于评估碳纳米材料的生物毒性及其在开发淀粉样变性治疗中的应用。同时,这两类纳米材料的杂交为将它们的一些理想特性结合到可能用于电子、执行器、传感、生物医学和结构材料的纳米复合材料中提供了新的可能性。本文综述了碳纳米材料和淀粉样纤维杂交的最新进展,并讨论了碳纳米材料-淀粉样纤维杂化物在生物纳米技术中的应用的最新研究现状。

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